首页> 外文期刊>International journal of hydrogen energy >Liquid water distribution in hydrophobic gas- diffusion layers with interconnect rib geometry: An invasion-percolation pore network analysis
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Liquid water distribution in hydrophobic gas- diffusion layers with interconnect rib geometry: An invasion-percolation pore network analysis

机译:具有互连肋几何形状的疏水性气体扩散层中的液态水分布:侵入-渗流孔网络分析

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Water distribution in gas diffusion layers (GDLs) of polymer electrolyte membrane fuel cells (PEMFCs) is determined by the pore morphology of the GDL as well as the flow conditions between the GDL and the gas flow field, where interconnect ribs and gas channels are placed side-by-side. The present study employs a steady state pore network model based on the invasion-percolation (IP) process to investigate the water transport in the under-rib region, in the under-channel region, and in between those regions inside the GDL. The interconnect rib partially blocks the outlet surface of the GDL, which forces water transport paths from the under-rib region to grow towards the gas channel through an extra IP process. The pore network model predicts spatially non-uniform water distributions inside the GDL due to the interconnect ribs, especially with an increased saturation level in the under-rib region. Parametric studies are also conducted to investigate the effects of several geometrical factors, such as width of the rib and the channel, thickness of the GDL, and water intruding condition at the inlet surface of the GDL.
机译:聚合物电解质膜燃料电池(PEMFC)的气体扩散层(GDL)中的水分布取决于GDL的孔隙形态以及GDL与气体流场之间的流动条件,其中放置了互连肋和气体通道并排。本研究采用基于入侵-渗滤(IP)过程的稳态孔隙网络模型,以研究肋下区域,通道下区域以及GDL内部区域之间的水传输。互连肋部分阻塞了GDL的出口表面,从而通过额外的IP工艺迫使水从肋下区域的输送路径向气体通道生长。孔隙网络模型预测由于互连肋,特别是随着肋下区域饱和度的增加,GDL内部空间分布不均匀。还进行了参数研究,以研究几种几何因素的影响,例如肋骨和通道的宽度,GDL的厚度以及GDL入口表面的进水条件。

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